2019
DOI: 10.1186/s11671-019-2906-1
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Self-Polarization of PVDF Film Triggered by Hydrophilic Treatment for Pyroelectric Sensor with Ultra-Low Piezoelectric Noise

Abstract: Polyvinylidene fluoride (PVDF) films possess multifunctional ability for piezo/pyro/ferroelectronic applications. One critical challenge of the traditional techniques is the complicated fabrication process for obtaining the poled films. In this work, the PVDF film is facilely prepared by the solution cast on hydrophilically treated substrates. The obtained PVDF films exhibit fairly good pyroelectricity comparable to those fabricated by thermal poling, indicating the film is self-polarized. This result is attri… Show more

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Cited by 32 publications
(19 citation statements)
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“…Most piezoelectric materials including piezoelectric PVDF film have pyroelectric property, which means their signal could be influenced by temperature fluctuation, limiting their applications. For instance, it could be difficult to measure the respiratory signal using the piezoelectric PVDF film sensor accurately because of the temperature difference between inhaled and exhaled air. Conversely, the PVDF nanofiber web exhibits relatively low, or almost no, pyroelectricity.…”
Section: Resultsmentioning
confidence: 99%
See 1 more Smart Citation
“…Most piezoelectric materials including piezoelectric PVDF film have pyroelectric property, which means their signal could be influenced by temperature fluctuation, limiting their applications. For instance, it could be difficult to measure the respiratory signal using the piezoelectric PVDF film sensor accurately because of the temperature difference between inhaled and exhaled air. Conversely, the PVDF nanofiber web exhibits relatively low, or almost no, pyroelectricity.…”
Section: Resultsmentioning
confidence: 99%
“…Most piezoelectric materials including piezoelectric PVDF film have pyroelectric property, which means their signal could be influenced by temperature fluctuation, limiting its applications[29][30][31] . For instance, the piezoelectric PVDF film sensor could be difficult to measure the respiratory signal accurately because of the temperature difference between inhaled and exhaled air.…”
mentioning
confidence: 99%
“… Various solvent systems used for PVDF-based PEMs and fraction of β-phase obtained [ 18 , 27 , 30 , 42 , 46 , 49 , 70 , 78 , 79 , 82 , 83 , 84 , 85 , 86 , 87 , 88 , 89 ]. …”
Section: Figurementioning
confidence: 99%
“…Thanks to their flexibility and ease of integration into curved surfaces like human body, flexible pressure sensors (FPS) have received tremendous attentions and show great potentials for applications in wearable devices [1, 2], electronic skins [3, 4], biomedical systems [5], and human motion detection [69]; lots of structures and mechanisms such as field effect transistor [10, 11], capacitor [2, 12], piezoelectric effect [1316], and piezoresistance effect [1719] have been proposed to realize FPS; among them, the capacitive FPS becomes increasingly attractive due to its simple structure [20], large dynamic range [21], and good stability [22]. In terms of materials used in FPS, polydimethylsiloxane (PDMS) is an excellent material due to its good flexibility, biomedical compliance with human tissue, and dielectric property, and it is accordingly often used as a structural material in FPS as well as other flexible sensors [2325]; in capacitive FPS, PDMS was often used as the dielectric layer [20, 26] and electrode substrate [2, 21]. When it comes to the electric conducting layer in FPS, silver nanowires (AgNWs), which have large potential and been widely used in flexible electronics such as solar cells [2732] and film heaters [33, 34] due to their excellent electrical, optical, and mechanical properties, were often used together with PDMS; for example, Chen et al [35] prepared silver nanowire (AgNWs)/(PDMS) composite films by partly embedding AgNWs in the PDMS layer to create rough surface, and the fabricated sensor device was able to achieve sensitivity three times of that using common metal film electrodes.…”
Section: Introductionmentioning
confidence: 99%